In this paper, the effect of the secondary flow induced by convergent-divergent riblets in supersonic turbulent boundary layers over a 24 degrees compression ramp at Mach number 2.9 is studied via direct numerical simulation. Two riblet cases with the wavelength A being 1.1 delta and 1.65 delta (delta is the boundary layer thickness) are conducted to examine their impact on the secondary rolling motion, momentum transfer, turbulent fluctuations, flow separation, and unsteady shock motion. As the flow develops over the riblet section, both the size and intensity of the secondary rolling motion tend to increase. For the riblet case with Lambda/delta - 1.1, a single rolling mode is observed within a half wavelength, while a pair of co-rotating...
Supersonic turbulent flows at Mach 2.7 over concave surfaces for two different radii of curvature we...
A freestream Mach 2.9 flat-plate supersonic turbulent boundary layer subject to a "pure" adverse pre...
The relationship between the upstream boundary layer and the low-frequency, large-scale unsteadiness...
In this paper, the effect of the secondary flow induced by convergent-divergent riblets in supersoni...
In this paper, a section of convergent-divergent (C-D) riblets is applied upstream of a compression ...
In this paper, a section of convergent-divergent (C-D) riblets is applied upstream of a compression ...
Direct numerical simulations of shock wave and supersonic turbulent boundary layer interaction in a ...
Direct numerical simulations of shock wave and supersonic turbulent boundary layer interaction in a ...
Direct numerical simulations of a turbulent channel flow developing over convergent-divergent (C-D) ...
Direct numerical simulations of a turbulent channel flow developing over convergent-divergent (C-D) ...
Numerical investigations on a supersonic turbulent boundary layer over a longitudinal curved compres...
A direct numerical simulation of the shock/turbulent boundary layer interaction flow in a supersonic...
A direct numerical simulation of the interaction between a shock wave and the supersonic turbulent b...
A direct numerical simulation of the interaction between a shock wave and the supersonic turbulent b...
Direct numerical simulation is conducted to uncover the response of a supersonic turbulent boundary ...
Supersonic turbulent flows at Mach 2.7 over concave surfaces for two different radii of curvature we...
A freestream Mach 2.9 flat-plate supersonic turbulent boundary layer subject to a "pure" adverse pre...
The relationship between the upstream boundary layer and the low-frequency, large-scale unsteadiness...
In this paper, the effect of the secondary flow induced by convergent-divergent riblets in supersoni...
In this paper, a section of convergent-divergent (C-D) riblets is applied upstream of a compression ...
In this paper, a section of convergent-divergent (C-D) riblets is applied upstream of a compression ...
Direct numerical simulations of shock wave and supersonic turbulent boundary layer interaction in a ...
Direct numerical simulations of shock wave and supersonic turbulent boundary layer interaction in a ...
Direct numerical simulations of a turbulent channel flow developing over convergent-divergent (C-D) ...
Direct numerical simulations of a turbulent channel flow developing over convergent-divergent (C-D) ...
Numerical investigations on a supersonic turbulent boundary layer over a longitudinal curved compres...
A direct numerical simulation of the shock/turbulent boundary layer interaction flow in a supersonic...
A direct numerical simulation of the interaction between a shock wave and the supersonic turbulent b...
A direct numerical simulation of the interaction between a shock wave and the supersonic turbulent b...
Direct numerical simulation is conducted to uncover the response of a supersonic turbulent boundary ...
Supersonic turbulent flows at Mach 2.7 over concave surfaces for two different radii of curvature we...
A freestream Mach 2.9 flat-plate supersonic turbulent boundary layer subject to a "pure" adverse pre...
The relationship between the upstream boundary layer and the low-frequency, large-scale unsteadiness...